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Studies on vibration control effects of a semi-active impact damper for seismically excited nonlinear building

机译:地震兴奋非线性建筑半主动冲击阻尼器的振动控制效应研究

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摘要

The semi-active impact damper (SAID) is proposed to improve the damping efficiency of traditional passive impact dampers. In order to investigate its damping mechanism and vibration control effects on realistic engineering structures, a 20-story nonlinear benchmark building is used as the main structure. The studies on system parameters, including the mass ratio, damping ratio, rigid coefficient, and the intensity of excitation are carried out, and their effects both on linear and nonlinear indexes are evaluated. The damping mechanism is herein further investigated and some suggestions for the design in high-rise buildings are also proposed. To validate the superiority of SAID, an optimal passive particle impact damper (PIDopt) is also investigated as a control group, in which the parameters of the SAID remain the same, and the optimal parameters of the PIDopt are designed by differential evolution algorithm based on a reduced-order model. The numerical simulation shows that the SAID has better control effects than that of the optimized passive particle impact damper, not only for linear indexes (e.g., root mean square response), but also for nonlinear indexes (e.g., component energy consumption and hinge joint curvature).
机译:提出了半主动冲击阻尼器(说)以提高传统被动冲击阻尼器的阻尼效率。为了调查其对现实工程结构的阻尼机制和振动控制效果,使用20层的非线性基准建筑用作主要结构。对系统参数的研究,包括质量比,阻尼比,刚性系数和激发强度,并评估对线性和非线性指标的影响。本文进一步研究了阻尼机制,还提出了对高层建筑物设计的一些建议。为了验证所述的优越性,还研究了最佳被动粒子冲击阻尼器(PIDOPT)作为对照组,其中所述保持不变的参数,并且PIDOPT的最佳参数由基于差分演进算法设计阶数模型。数值模拟表明,所述具有比优化的被动粒子冲击阻尼器的控制效果更好,不仅用于线性索引(例如,根均方响应),而且还用于非线性指标(例如,组件能量消耗和铰链关节曲率) )。

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